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细胞电纺:一种将活细胞和其他先进材料功能化纤维、支架和膜的新型工具,用于再生生物学和医学。

Cell electrospinning: a novel tool for functionalising fibres, scaffolds and membranes with living cells and other advanced materials for regenerative biology and medicine.

机构信息

BioPhysics Group, UCL Institute of Biomedical Engineering, UCL Centre for Stem Cells and Regenerative Medicine, Department of Mechanical Engineering, University College London, Torrington Place, London WC1E 7JE, UK.

出版信息

Analyst. 2013 Apr 21;138(8):2215-23. doi: 10.1039/c3an36599a.

Abstract

Recent years have seen interest in approaches for directly generating fibers and scaffolds following a rising trend for their exploration in the health sciences. In this review the author wishes to briefly highlight the many approaches explored to date for generating such structures, while underlining their advantages and disadvantages, and their contribution in particular to the biomedical sciences. Such structures have been demonstrated as having implications in both the laboratory and the clinic, as they mimic the native extra cellular matrix. Interestingly the only materials investigated until very recently for generating fibrous architectures employed either natural or synthetic polymers with or without the addition of functional molecule(s). Arguably although such constructs have been demonstrated to have many applications, they lack the one unit most important for carrying out the ability to directly reconstruct a three-dimensional functional tissue, namely living cells. Therefore recent findings have demonstrated the ability to directly form cell-laden fibers and scaffolds in useful quantities from which functional three-dimensional living tissues can be conceived. These recent developments have far-reaching ramifications to many areas of research and development, a few of which range from tissue engineering and regenerative medicine, a novel approach to analyzing cell behavior and function in real time in three-dimensions, to the advanced controlled and targeted delivery of experimental and/or medical cells and/or genes for localized treatment. At present these developments have passed all in vitro and in vivo mouse model based challenge trials and are now spearheading their journey towards initiating human clinical trials.

摘要

近年来,人们对直接生成纤维和支架的方法产生了兴趣,这一趋势在健康科学领域不断升温。在这篇综述中,作者希望简要地强调迄今为止探索到的许多生成这些结构的方法,同时强调它们的优缺点,以及它们在生物医学科学中的特殊贡献。这些结构已经在实验室和临床中得到了证明,因为它们模拟了天然的细胞外基质。有趣的是,直到最近,人们才开始研究用于生成纤维结构的唯一材料,这些材料要么是天然或合成聚合物,要么是添加了功能分子。可以说,尽管这些结构已经被证明具有许多应用,但它们缺乏一个最重要的单元,即能够直接重建三维功能组织的活细胞。因此,最近的研究结果表明,人们已经能够直接形成具有一定功能的三维活组织所需的大量细胞负载纤维和支架。这些最新进展对许多研究和开发领域都具有深远的影响,其中一些领域包括组织工程和再生医学、实时分析细胞在三维空间中行为和功能的新方法,以及实验性和/或医学细胞和/或基因的高级控制和靶向递送到局部治疗的方法。目前,这些进展已经通过了所有基于体外和体内小鼠模型的挑战试验,现在正在引领它们进入人体临床试验的阶段。

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